Characterizing the attractors of chaotic systems by a direct measurement method
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TEODORESCU, Horia Nicolai, HULEA , Mircea Gh., COJOCARU, Victor. Characterizing the attractors of chaotic systems by a direct measurement method. In: Conference on System Theory, Control and Computing: . ICSTCC, Ed. 18, 17-19 octombrie 2014, Sinaia. Institute of Electrical and Electronics Engineers Inc., 2014, Ediția 18, pp. 494-500. ISBN 978-147994601-3. DOI: https://doi.org/10.1109/ICSTCC.2014.6982465
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Conference on System Theory, Control and Computing
Ediția 18, 2014
Conferința "Conference on System Theory, Control and Computing"
18, Sinaia, Romania, 17-19 octombrie 2014

Characterizing the attractors of chaotic systems by a direct measurement method

DOI:https://doi.org/10.1109/ICSTCC.2014.6982465

Pag. 494-500

Teodorescu Horia Nicolai12, Hulea Mircea Gh.1, Cojocaru Victor3
 
1 Gheorghe Asachi Technical University of Iasi,
2 Institute of Computer Science of the Romanian Academy,
3 Institute of the Electronic Engineering and Nanotechnologies "D. Ghitu" of the Academy of Sciences of Moldova
 
 
Disponibil în IBN: 8 iunie 2023


Rezumat

Due to the high sensitivity to internal parameters, the operation of the chaotic systems may couple strongly to the ambient and are apt to detect small variations of external factors that influence the internal ones. We present details of a method and related equipment for analyzing and characterizing the behavior of chaotic systems, suited for assessing changes in the dynamics. The method essentially consists in determining the probability that the trajectory of the chaotic system is located in a specified region of the phase space. The method is based on the measurement of the time intervals spent by the trajectory in the specified phase space interval. The measuring equipment is a high precision time measuring one, based on microcontrollers. We exemplify the method by assessing the dependency of the behavior of a chaotic electronic circuit on the variation of the power supply voltage

Cuvinte-cheie
Attractor, chaotic system, electronic measurement system, phase space interval, time measuring